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J Electr Electron Mater : Journal of Electrical and Electronic Materials

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"Additive polarity winding"

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"Additive polarity winding"

Analysis on Current Limiting Characteristics of Series Connection-type SFCL with Two Magnetically Coupled Circuits Applied into a Simulated Power System
Seok Cheol Ko, Shin Won Lee
J Korean Inst Electr Electron Mater Eng 2013;26(1):68-72.   Published online January 1, 2013
DOI: https://doi.org/10.4313/JKEM.2013.26.1.68
The series connection-type superconducting fault current limiter (SFCL) with two magnetically coupled circuits was suggested and its effectiveness through the analysis on the current limiting and recovery characteristics was described. The fault current limiting characteristics of the proposed SFCL as well as the load voltage sag compensating characteristics according to the winding direction were investigated. To confirm the fault current limiting and the voltage sag suppressing characteristics of the this SFCL, the short-circuit tests for the simulated power system with the series connection-type SFCL were carried out. The series connection-type SFCL designed with the additive polarity winding was shown to perform more effective fault current limiting and load voltage sag compensating operations through the fast quench occurrence right after the fault appears and the fast recovery operation after the fault removes than that with the subtractive polarity winding.
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Current Limiting and Voltage Sag Suppressing Characteristics of Flux-Lock Type SFCL According to Variations of Turn Number`s Ratio
Tae Hee Han, Sung Hun Lim
J Korean Inst Electr Electron Mater Eng 2011;24(5):410-415.   Published online May 1, 2011
DOI: https://doi.org/10.4313/JKEM.2011.24.5.410
In this paper, we investigated the fault current limiting and the load voltage sag suppressing characteristics of the flux-lock type SFCL, designed with the additive polarity winding, according to the variations of turn number`s ratio and the comparative analysis between the resistive type and the flux-lock type SFCLs were performed as well. From the analysis for the short-circuit tests, the flux-lock type SFCL designed with the larger turn number`s ratio was shown to perform more effective fault current limiting and load voltage sag suppressing operations compared to the flux-lock type SFCL designed with the lower turn number`s ratio through the fast quench occurrence of the high-TC superconducting (HTSC) element comprising the flux-lock type SFCL. In addition, the recovery time of the flux-lock type SFCL after the fault removed could be confirmed to be shorter in case of the flux-lock type SFCL designed with the lower turn number ratio.
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